Abstract
A suite of pure magnesian wadsleyite (β-Mg2SiO4) samples containing 0.005, 0.38, 1.18, and 1.66 wt% H2O was studied by single-crystal X-ray diffraction to determine the effects of hydration on cation ordering and crystal symmetry. Separate compressibility experiments were carried out to 9.6 GPa to determine the effects of hydration on isothermal equations of state. Crystal-structure refinements at ambient conditions show cation vacancies order onto the M3 site. The most hydrous sample (1.6 wt% H2O) displayed monoclinic symmetry with β = 90.090(7)°, whereas the samples with lower content were statistically orthorhombic. The density of wadsleyite decreases with increasing water content at STP according to the empirical relation, ρ = 3.470(2) - 0.046(2) CH2O g/cm3 (with CH2O in wt% H2O). Bulk moduli and pressure derivatives of wadsleyite are KT0 = 173(5) GPa, K0' = 4.1(15) for 0.005 wt% H2O; KT0 = 161(4) GPa, K0' = 5.4(11) for 0.38 wt% H2O; KT0 = 158(4) GPa, K0' = 4.2(9) for 1.18 wt% H2O; and KT0 = 154(4) GPa, K0' = 4.9(11) for 1.66 wt% H2O. Variation of the bulk modulus of wadsleyite with water content is non-linear, which may be attributable to softening of the structure by ordering of vacancies onto two non-equivalent M3 sites (M3a and M3b) and an accompanying dilution of orthorhombic symmetry.
© 2015 by Walter de Gruyter Berlin/Boston
Articles in the same Issue
- Compositional variability and crystal structural features of guanacoite
- Interferometric study of pyrite surface reactivity in acidic conditions
- White mica domain formation: A model for paragonite, margarite, and muscovite formation during prograde metamorphism
- High-pressure phase transitions in MgSiO3 orthoenstatite studied by atomistic computer simulation
- Time-resolved synchrotron powder X-ray diffraction study of magnetite formation by the Fe(III)-reducing bacterium Geobacter sulfurreducens
- Low-temperature calorimetric and magnetic data for natural end-members of the axinite group
- Temperature derivatives of elastic wave velocities in plagioclase (An51±1) above and below the order-disorder transition temperature
- Disordered silica with tridymite-like structure in the Twiggs clay
- Crystal structures of synthetic melanotekite (Pb2Fe2Si2O9), kentrolite (Pb2Mn2Si2O9), and the aluminum analogue (Pb2Al2Si2O9)
- Structure and reactivity of synthetic Co-substituted goethites
- The crystal chemistry of Fe-bearing sphalerites: An infrared spectroscopic study
- Effects of hydration on the structure and compressibility of wadsleyite, β-(Mg2SiO4)
- Metastability of sillimanite relative to corundum and quartz in the kyanite stability field: Competition between stable and metastable reactions
- Diffusion, discontinuous precipitation, metamorphism, and metasomatism: The complex history of South African upper-mantle symplectites
- Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study
- The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene
- High-pressure phase relation of MnSiO3 up to 85 GPa: Existence of MnSiO3 perovskite
- Linking Mössbauer and structural parameters in elbaite-schorl-dravite tourmalines
- Synchrotron powder X-ray diffraction study of the structure and dehydration behavior of palygorskite
- Maskelynite-hosted apatite in the Chassigny meteorite: Insights into late-stage magmatic volatile evolution in martian magmas
- Eskolaite associated with diamond from the Udachnaya kimberlite pipe, Yakutia, Russia
- Lakebogaite, CaNaFe23+H(UO2)2(PO4)4(OH)2(H2O)8, a new uranyl phosphate with a unique crystal structure from Victoria, Australia
- Letter. Crystal structure and Raman spectrum of hydroxyl-bästnasite-(Ce), CeCO3(OH)
Articles in the same Issue
- Compositional variability and crystal structural features of guanacoite
- Interferometric study of pyrite surface reactivity in acidic conditions
- White mica domain formation: A model for paragonite, margarite, and muscovite formation during prograde metamorphism
- High-pressure phase transitions in MgSiO3 orthoenstatite studied by atomistic computer simulation
- Time-resolved synchrotron powder X-ray diffraction study of magnetite formation by the Fe(III)-reducing bacterium Geobacter sulfurreducens
- Low-temperature calorimetric and magnetic data for natural end-members of the axinite group
- Temperature derivatives of elastic wave velocities in plagioclase (An51±1) above and below the order-disorder transition temperature
- Disordered silica with tridymite-like structure in the Twiggs clay
- Crystal structures of synthetic melanotekite (Pb2Fe2Si2O9), kentrolite (Pb2Mn2Si2O9), and the aluminum analogue (Pb2Al2Si2O9)
- Structure and reactivity of synthetic Co-substituted goethites
- The crystal chemistry of Fe-bearing sphalerites: An infrared spectroscopic study
- Effects of hydration on the structure and compressibility of wadsleyite, β-(Mg2SiO4)
- Metastability of sillimanite relative to corundum and quartz in the kyanite stability field: Competition between stable and metastable reactions
- Diffusion, discontinuous precipitation, metamorphism, and metasomatism: The complex history of South African upper-mantle symplectites
- Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study
- The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene
- High-pressure phase relation of MnSiO3 up to 85 GPa: Existence of MnSiO3 perovskite
- Linking Mössbauer and structural parameters in elbaite-schorl-dravite tourmalines
- Synchrotron powder X-ray diffraction study of the structure and dehydration behavior of palygorskite
- Maskelynite-hosted apatite in the Chassigny meteorite: Insights into late-stage magmatic volatile evolution in martian magmas
- Eskolaite associated with diamond from the Udachnaya kimberlite pipe, Yakutia, Russia
- Lakebogaite, CaNaFe23+H(UO2)2(PO4)4(OH)2(H2O)8, a new uranyl phosphate with a unique crystal structure from Victoria, Australia
- Letter. Crystal structure and Raman spectrum of hydroxyl-bästnasite-(Ce), CeCO3(OH)